IP Library › Granted Patent US 11,912,809
Granted Patent B2
US 11,912,809 · App. 18/327,119 · Granted Feb 27, 2024

High porosity fluorided silica-coated alumina activator-supports and uses thereof in metallocene-based catalyst systems for olefin polymerization

Inventors: Max P. McDaniel (Bartlesville, OK); Eric D. Schwerdtfeger (Bartlesville, OK); Qing Yang (Bartlesville, OK); Carlos A. Cruz (Kingwood, TX); Jinping J. Zhou (Bartlesville, OK); Anand Ramanathan (Bartlesville, OK); Kathy S. Clear (Bartlesville, OK); Zhihui Gu (Bellarie, TX)
Assignee: Chevron Phillips Chemical Company LP
C08F4/025B01J29/06B01J35/1019B01J35/1042B01J35/1047B01J35/1061C08F210/16C08F2420/00
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Quick Facts
Patent No.
US 11,912,809
App. No.
18/327,119
Granted
Feb 27, 2024
Kind
B2
Abstract

Fluorided silica-coated alumina activator-supports have a bulk density from 0.15 to g/mL, a total pore volume from 0.85 to 2 mL/g, a BET surface area from 200 to 500 m 2 /g, an average pore diameter from 10 to 25 nm, and from 80 to 99% of pore volume in pores with diameters of greater than 6 nm. Methods of making the fluorided silica-coated alumina activator-supports and using the fluorided silica-coated aluminas in catalyst compositions and olefin polymerization processes also are described. Representative ethylene-based polymers produced using the compositions and processes have a melt index of 0.1 to 10 g/10 min and a density of 0.91 to 0.96 g/cm 3 , and contain from 70 to 270 ppm solid oxide and from 2 to 18 ppm fluorine.

Claims (54)

1. A fluorided silica-coated alumina having:

a bulk density from 0.15 to 0.37 g/mL;

a total pore volume from 0.85 to 2 mL/g;

a BET surface area from 200 to 500 m 2 /g; and

an average pore diameter from 10 to 25 nm and/or from 80 to 99% of pore volume in pores with diameters of greater than 6 nm.

2. The fluorided silica-coated alumina of claim 1 , wherein the fluorided silica-coated alumina contains:

from 10 to 80 wt. % silica, based on a weight of silica-coated alumina; and

from 0.5 to 18 wt. % F, based on a weight of the fluorided silica-coated alumina.

3. The fluorided silica-coated alumina of claim 1 , wherein the fluorided silica-coated alumina has an average (d50) particle size from 30 to 150 microns.

4. The fluorided silica-coated alumina of claim 1 , wherein:

the bulk density is from 0.17 to 0.3 g/mL;

the total pore volume is from 0.9 to 1.5 mL/g;

the BET surface area is from 250 to 450 m 2 /g;

the average pore diameter is from 10 to 20 nm; and

from 83 to 98% of the pore volume is in pores with diameters of greater than 6 nm.

5. The fluorided silica-coated alumina of claim 1 , wherein:

from 9.5 to 30% of the pore volume is in pores with diameters of greater than 20 nm;

from 3.5 to 15% of the pore volume is in pores with diameters of greater than 40 nm;

the fluorided silica-coated alumina has a pore volume of from 0.7 to 1.6 mL/g in pores with diameters of greater than 6 nm; and

the fluorided silica-coated alumina has a pore volume of from 0.09 to 0.4 mL/g in pores with diameters of greater than 20 nm.

6. The fluorided silica-coated alumina of claim 1 , wherein:

from 65 to 98% of surface area is in pores with diameters of greater than 6 nm;

from 19.5 to 55% of surface area is in pores with diameters of greater than 10 nm;

the fluorided silica-coated alumina has a surface area of from 250 to 475 m 2 /g in pores with diameters of greater than 6 nm; and

the fluorided silica-coated alumina has a surface area of from 78 to 200 m 2 /g in pores with diameters of greater than 10 nm.

7. The fluorided silica-coated alumina of claim 1 , wherein the average pore diameter of the fluorided silica-coated alumina is from 10 to 25 nm.

8. The fluorided silica-coated alumina of claim 7 , wherein the fluorided silica-coated alumina contains:

from 10 to 80 wt. % silica, based on a weight of silica-coated alumina; and

from 0.5 to 18 wt. % F, based on a weight of the fluorided silica-coated alumina.

9. The fluorided silica-coated alumina of claim 7 , wherein the fluorided silica-coated alumina has an average (d50) particle size from 30 to 150 microns.

10. The fluorided silica-coated alumina of claim 7 , wherein:

the bulk density is from 0.17 to 0.3 g/mL;

the total pore volume is from 0.9 to 1.5 mL/g;

the BET surface area is from 250 to 450 m 2 /g; and

from 83 to 98% of the pore volume is in pores with diameters of greater than 6 nm.

11. The fluorided silica-coated alumina of claim 7 , wherein:

from 9.5 to 30% of the pore volume is in pores with diameters of greater than 20 nm;

from 3.5 to 15% of the pore volume is in pores with diameters of greater than 40 nm;

the fluorided silica-coated alumina has a pore volume of from 0.7 to 1.6 mL/g in pores with diameters of greater than 6 nm; and

the fluorided silica-coated alumina has a pore volume of from 0.09 to 0.4 mL/g in pores with diameters of greater than 20 nm.

12. The fluorided silica-coated alumina of claim 7 , wherein:

from 65 to 98% of surface area is in pores with diameters of greater than 6 nm;

from 19.5 to 55% of surface area is in pores with diameters of greater than 10 nm;

the fluorided silica-coated alumina has a surface area of from 250 to 475 m 2 /g in pores with diameters of greater than 6 nm; and

the fluorided silica-coated alumina has a surface area of from 78 to 200 m 2 /g in pores with diameters of greater than 10 nm.

13. The fluorided silica-coated alumina of claim 1 , wherein from 80 to 99% of the pore volume is in pores with diameters of greater than 6 nm.

14. The fluorided silica-coated alumina of claim 13 , wherein the fluorided silica-coated alumina contains:

from 10 to 80 wt. % silica, based on a weight of silica-coated alumina; and

from 0.5 to 18 wt. % F, based on a weight of the fluorided silica-coated alumina.

15. The fluorided silica-coated alumina of claim 13 , wherein the fluorided silica-coated alumina has an average (d50) particle size from 30 to 150 microns.

16. The fluorided silica-coated alumina of claim 13 , wherein:

the bulk density is from 0.17 to 0.3 g/mL;

the total pore volume is from 0.9 to 1.5 mL/g; and

the BET surface area is from 250 to 450 m 2 /g.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 24, 2024
From: MCDANIEL, MAX P.; SCHWERDTFEGER, ERIC D.; YANG, QING; CRUZ, CARLOS A.; ZHOU, JINPING J.; RAMANATHAN, ANAND; CLEAR, KATHY S.; GU, ZHIHUI
To: CHEVRON PHILLIPS CHEMICAL COMPANY LP
Reel/Frame 069001/0522 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 22, 2024
From: MCDANIEL, MAX P.; SCHWERDTFEGER, ERIC D.; YANG, QING; CRUZ, CARLOS A.; ZHOU, JINPING J.; RAMANATHAN, ANAND; CLEAR, KATHY S.; GU, ZHIHUI
To: CHEVRON PHILLIPS CHEMICAL COMPANY LP
Reel/Frame 066200/0085 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNMENT BY ADDING INVENTOR JINPING J. ZHOU, WHO WAS INADVERENTLY LEFT OFF OF THE ASSIGNMENT PREVIOUSLY RECORDED AT REEL: 063881 FRAME: 0057. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Dec 4, 2023
From: MCDANIEL, MAX P.; SCHWERDTFEGER, ERIC D.; YANG, QING; CRUZ, CARLOS A.; ZHOU, JINPING J.; RAMANATHAN, ANAND; CLEAR, KATHY S.; GU, ZHIHUI
To: CHEVRON PHILLIPS CHEMICAL COMPANY LP
Reel/Frame 066014/0748 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 7, 2023
From: MCDANIEL, MAX P.; SCHWERDTFEGER, ERIC D.; YANG, QING; CRUZ, CARLOS A.; RAMANATHAN, ANAND; CLEAR, KATHY S.; GU, ZHIHUI
To: CHEVRON PHILLIPS CHEMICAL COMPANY LP
Reel/Frame 063881/0057 →
Continuity (2)
Provisional Application 63348044 · Jun 2, 2022
Related Publication 20230391897A1 · Dec 7, 2023
Cited By (2)
US 12,319,770 US 12,516,137